DocumentCode :
514584
Title :
Influence of Front Double Wishbone Independent Suspension Performance on Front Rubber Bushing Stiffness of Lower Control Arm
Author :
Liu Xintian ; Huang Hu ; Wang Jichang ; Zhao Lihui ; Guo Hui ; Wang Yansong
Author_Institution :
Coll. of Automobile Eng., Shanghai Univ. of Eng. Sci., Shanghai, China
Volume :
2
fYear :
2010
fDate :
13-14 March 2010
Firstpage :
460
Lastpage :
463
Abstract :
Front double wishbone independent suspension is built according to hard point parameters of a car. After the rubber bushing stiffness of lower control arm is changed, the suspension performance is analyzed and discussed with multi-body dynamics and Suspension Kinematics theory. The conclusion can be drawn as follows: when wheels are hoping, all the stiffness of lower control arm have no effect on camber angle, caster angle and kingpin_incl_angle, and torsion stiffness of rubber bushing has heavy effect on toe angle, but axial, radial stiffness have no effect. While steering, all the stiffness of lower control arm rubber bushing have no effect on camber angle and toe angle, torsion stiffness has no affects on caster angle, axial stiffness has a little and radial stiffness has heavy, axial and torsion stiffness have none on kingpin_incl_angle, but radial stiffness has heavy. During the analyze of traction force and brake force, torsion stiffness of lower control arm rubber bushing has no effect on camber angle, kingpin_incl_angle and toe angle, axial stiffness has a little, and radial stiffness heavy. According to the curve of caster angle VS brake force, radial and axial stiffness of rubber bushing have a little affects on caster angle, but torsion stiffness none.
Keywords :
automobiles; brakes; bushings; kinematics; steering systems; suspensions (mechanical components); traction; vehicle dynamics; brake force; car; front double wishbone independent suspension; front rubber bushing stiffness; lower control arm; multibody dynamics; steering; suspension kinematics theory; torsion stiffness; traction force; Acceleration; Automotive engineering; Insulators; Jacobian matrices; Kinematics; Mechatronics; Performance analysis; Rubber; Vehicle dynamics; Wheels; Front Double Wishbone Independent Suspension; rubber bushing; stiffness;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Measuring Technology and Mechatronics Automation (ICMTMA), 2010 International Conference on
Conference_Location :
Changsha City
Print_ISBN :
978-1-4244-5001-5
Electronic_ISBN :
978-1-4244-5739-7
Type :
conf
DOI :
10.1109/ICMTMA.2010.582
Filename :
5458550
Link To Document :
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